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Epac1通过JAK/STAT信号通路抑制眼眶成纤维细胞活化,以改善甲状腺相关眼病样特征。

Epac1 Inhibits Orbital Fibroblast Activation to Ameliorate Thyroid-Associated Orbitopathy-Like Features Through the JAK/STAT Signaling Pathway.

作者信息

Liu Rong, Xin Xin, Ma Shunguo, Guo Jinmin, Wu Chenmian, Qi Xin, Luo Ban

机构信息

Department of Ophthalmology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, Hubei, China.

Hubei Key Laboratory of Otolaryngologic and Ophthalmic Diseases, Wuhan, Hubei, China.

出版信息

Invest Ophthalmol Vis Sci. 2025 Jul 1;66(9):68. doi: 10.1167/iovs.66.9.68.

Abstract

PURPOSE

Orbital fibroblast (OF) activation plays an important role in thyroid-associated orbitopathy (TAO) development. Epac1, as a cyclic adenosine monophosphate (cAMP) effector, has been recognized as a pivotal mediator of the anti-fibrosis properties of cAMP. This study investigated the role and mechanisms of Epac1 in OF activation.

METHODS

Clinical orbital samples were collected from patients with TAO and normal healthy volunteers, and a TAO mouse model was established using adenovirus expressing the human TSHR A subunit (Ad-TSHR), which was evaluated for histopathological features and detected for Epac1 and vimentin expression levels. Clinical TAO samples- (TAO OFs) and healthy people-derived OFs (normal OFs) were isolated and identified using immunofluorescent (IF) staining. Healthy and TAO OFs were transfected with Epac1-overexpressing plasmid (Epac1) for Epac1 overexpression or sh-Epac1 plasmid for Epac1 knockdown, treated with TGFβ1, and then examined for cell phenotypes and the expression level of Epac1 and fibrosis-related markers (α-SMA, fibronectin, and collagens). Furthermore, adeno-associated virus (AAV) overexpressing Epac1 (AAV-Epac1) was injected into TAO mouse orbital tissues to investigate the anti-fibrotic effects of Epac1 on TGFβ1-stimulated OFs in vivo. Moreover, the phosphorylation of STAT3 in the TGFβ1-stimulated TAO OFs and TAO mice model was investigated. The JAK/STAT signaling inhibitor Stattic was used to explore the involvement of the JAK/STAT signaling in the functions of Epac1.

RESULTS

Both clinical TAO samples and the TAO mouse model demonstrated significantly changed histopathology, reduced Epac1 expression, and increased vimentin level. TGFβ1 stimulation significantly facilitated cell viability and migration of normal OFs and TAO OFs, and elevated α-SMA, fibronectin, vimentin, collagen I, and collagen III expression levels. However, Epac1 overexpression in OFs could notably attenuate these pro-fibrosis effects of TGFβ1 on both normal and TAO OFs, shown as inhibiting cell viability and migration and decreasing expression of fibrotic markers. Whereas, Epac1 knockdown aggravated TGFβ1-induced fibrosis. In vivo, Epac1 overexpression also improved TAO-like symptoms in TAO model mice. Mechanically, Epac1 overexpression inhibited STAT3 phosphorylation in vitro and in vivo. Stattic effectively attenuated the effects of Epac1 knockdown on TGFβ1-treated TAO OFs.

CONCLUSIONS

Epac1 was a critical regulator of fibrotic and inflammatory processes in TAO through mediating the JAK/STAT signaling pathway.

摘要

目的

眼眶成纤维细胞(OF)激活在甲状腺相关眼病(TAO)的发展中起重要作用。Epac1作为一种环磷酸腺苷(cAMP)效应器,已被认为是cAMP抗纤维化特性的关键介质。本研究探讨Epac1在OF激活中的作用及机制。

方法

收集TAO患者和正常健康志愿者的临床眼眶样本,利用表达人促甲状腺激素受体A亚基的腺病毒(Ad-TSHR)建立TAO小鼠模型,评估其组织病理学特征,并检测Epac1和波形蛋白的表达水平。采用免疫荧光(IF)染色分离并鉴定临床TAO样本来源的OF(TAO OFs)和健康人来源的OF(正常OFs)。用Epac1过表达质粒(Epac1)转染健康和TAO OFs以过表达Epac1,或用sh-Epac1质粒转染以敲低Epac1,用转化生长因子β1(TGFβ1)处理,然后检测细胞表型以及Epac1和纤维化相关标志物(α-平滑肌肌动蛋白、纤连蛋白和胶原蛋白)的表达水平。此外,将过表达Epac1的腺相关病毒(AAV)注射到TAO小鼠眼眶组织中,以研究Epac1对TGFβ1刺激的OFs在体内的抗纤维化作用。此外,研究了TGFβ1刺激的TAO OFs和TAO小鼠模型中信号转导和转录激活因子3(STAT3)的磷酸化情况。使用JAK/STAT信号抑制剂Stattic来探究JAK/STAT信号在Epac1功能中的作用。

结果

临床TAO样本和TAO小鼠模型均显示组织病理学明显改变、Epac1表达降低以及波形蛋白水平升高。TGFβ1刺激显著促进了正常OFs和TAO OFs的细胞活力和迁移,并提高了α-平滑肌肌动蛋白、纤连蛋白、波形蛋白、I型胶原蛋白和III型胶原蛋白的表达水平。然而,OFs中Epac1过表达可显著减弱TGFβ1对正常和TAO OFs的这些促纤维化作用,表现为抑制细胞活力和迁移以及降低纤维化标志物的表达。而敲低Epac1则加重了TGFβ1诱导的纤维化。在体内,Epac1过表达也改善了TAO模型小鼠的TAO样症状。机制上,Epac1过表达在体外和体内均抑制了STAT3磷酸化。Stattic有效减弱了敲低Epac1对TGFβ1处理的TAO OFs的影响。

结论

Epac1通过介导JAK/STAT信号通路是TAO纤维化和炎症过程的关键调节因子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/853f/12315924/4cadbee78c9f/iovs-66-9-68-f001.jpg

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